Semiconductor Physics, Quantum Electronics & Optoelectronics. 2015. V. 18, N 1. P. 106-109.
https://doi.org/10.15407/spqeo18.01.106


                                                                 

References

1. P.J.F. Harris, Carbon Nanotubes and Related Structures: New Materials for the Twenty-First Century. Cambridge Univ. Press, Cambridge, 1999.
https://doi.org/10.1017/CBO9780511605819
 
2. Z. Chen, Y.-M. Lin, M.J. Rooks, Ph. Avouris, Graphene nano-ribbon electronics. Physica E: Low-dimens. Systems and Nanostruct. 40, p. 228-232 (2007).
 
3.    V.G. Lytovchenko, M.V. Strikha, M.I. Klyui, Modified graphene-like films as a new glass of semiconductors with a variable energy GaP. Ukr. J. Phys. 56, p. 175-178 (2011).
 
4.    Yu.V. Ioni, S.V. Tkachev, N.A. Bulychev, S.P. Gubin, Superdispersed nanographite. Inorganic Materials, 47, p. 671-677 (2011).
https://doi.org/10.1134/S0020168511060100
 
5.    Yu.M. Lahtin, V.P. Leont'eva, Materials Technology, Handbook. Moscow, Manufacturing Publ., 1990 (in Russian).
 
6.    V.N. Antonyuk, N.L. Dmitruk, M.F. Medvedeva, Ellipsometry in Science and Engineering, Handbook. Novosibirsk, Nauka Publ., 1987 (in Russian).
 
7.    J. Weber, V. Calado, and M. Van de Sanden. Optical constants of graphene measured by spectroscopic ellipsometry. Appl. Phys. Lett. 97, 091904 (2010).
https://doi.org/10.1063/1.3475393
 
8.    A. Matkovic, U. Ralevic, G. Isic et al., Spectroscopic ellipsometry and the Fano resonance modeling of graphene optical parameters. Phys. Scr. 149, 014069 (2012).
https://doi.org/10.1088/0031-8949/2012/T149/014069
 
9.    C.F. Bohren, D.R. Huffman, Absorption and Scattering of Light by Small Particles. Wiley, New York, 1983.
 
10.    M.A. Pimenta, G. Dresselhaus, M.S. Dresselhaus et al., Studying disorder in graphite-based systems by Raman spectroscopy. Phys. Chem. Chem. Phys. 9, p. 1276 (2007).
https://doi.org/10.1039/b613962k
 
11.    V.A. Ermakov, Investigation of structural and chemical parameters of thin films, nanoglass­ceramics and multilayered nanographite by using Raman spectroscopy. PhD Thesis (Physics and Mathematics: 01.04.05), Sankt-Petersburg, 2011.
 
12.    L.G. Cancado, K. Takai, T. Enoki et al., General equation for the determination of the crystallite size of nanographite by Raman spectroscopy. Appl. Phys. Lett. 88, p. 3 (2006).
https://doi.org/10.1063/1.2196057